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B M Dean

Publications and source records attributed to B M Dean.

At least 37 records · Page 2Linked to original sources

Pre-diabetes in the spontaneously diabetic BB/E rat: lymphocyte subpopulations in the pancreatic infiltrate and expression of rat MHC class II molecules in endocrine cells.

Use of monoclonal antibodies specific for rat lymphocyte subsets and an anti-insulin marker has allowed us to document the following sequence of events leading to the development of clinical diabetes in this animal model. The first change observed in the pancreas is increased expression of MHC class II molecules on vascular endothelium and this precedes lymphocytic infiltration. Next, T cells of the T helper phenotype infiltrate the pancreas around blood vessels. Many of the infiltrating T cells show class II expression indicating that they are activated. A few cytotoxic and suppressor cells and B lymphocytes are also present and their numbers increase proportionately with rat age. Some macrophages are also seen. Finally, at a late stage class II MHC molecules can be detected in partially destroyed islets on beta cells which are still actively synthesising insulin. We have never observed expression of class II molecules on glucagon or somatostatin secreting cells which are invariably well preserved.

Animals↗

Fluctuating islet-cell autoimmunity in unaffected relatives of patients with insulin-dependent diabetes.

Complement-fixing islet-cell antibodies (CF-ICA) were found in 20 out of 685 unaffected first-degree relatives of children with type 1 diabetes. During a 5-year follow-up, 7 of the 20 became diabetic, 1 continued to show the antibodies without any abnormality of glucose tolerance, and 12 subjects lost them without the disease developing. Although CF-ICA are useful as a marker of active insulitis they should not at present be used to define subjects who might benefit from preventive immunosuppression.

Antibodies↗

IgG subclass distribution in organ specific autoantibodies. The relationship to complement fixing ability.

Indirect immunofluorescence techniques employing sheep monospecific antisera to human IgG subclasses on unfixed cryostat sections have revealed the IgG subclass distribution in autoantibodies to pancreatic islets (ICA), thyroid epithelial (TMA), gastric parietal (PCA) and adrenal fasciculata (AdA) cells. Whereas antibodies were detected in all four subclasses in 21 of 27 TMA positive sera (mean IgG titre 29 +/- 5 . 2), 13 of 15 PCA (mean IgG titre 41 +/- 3 . 8) and eight of 14 AdA sera (mean IgG titre 10 +/- 3 . 1), only four of 35 ICA positive sera (mean IgG titre 45 +/- 3 . 6) reacted in all four subclasses. Approximately 50% of ICA positive sera showed a restricted polyclonal response to the 'common' pancreatic antigen and 12% of these sera reacted only with IgG2 subclass. The restriction rarely applied to co-existent thyrogastric antibodies in these sera and was independent of the ability of ICA to fix complement. Lesser subclass restrictions were observed in antibody responses to the 'common' antigen of the adrenal cortex.

Adrenal Glands↗

Genetic and immunologic factors in microvascular disease in type I insulin-dependent diabetes.

A detailed study of 133 subjects with insulin-dependent (type I) diabetes with severe microvascular disease has failed to substantiate the hypothesis that HLA factors influence the predisposition to this type of complication. A significant association between proliferative retinopathy and raised levels of circulating immune complexes was found. The distribution of insulin-binding levels in serum was similar to that in patients without complications. There was no correlation between insulin binding and the presence of immune complexes and no evidence was found that these complexes contained anti-insulin, anti-nuclear, or organ-specific antibodies. The distribution of insulin-binding levels in these subjects with diabetes of long duration was similar to that observed in 270 subjects with juvenile-onset short-duration type I diabetes. When the data were combined, significant associations between HLA-B8 and low/absent insulin binding levels were observed. HLA-BW62 was not associated with either high or low insulin-binding capacity. It is concluded that HLA genetic factors, insulin-binding capacity, and autoimmunity are unrelated to the pathogenesis of microvascular disease. Raised levels of circulating immune complexes may well be secondary to widespread tissue damage in diabetes of long duration.

Adult↗

Complement-fixing islet-cell antibodies in type-I diabetes: possible monitors of active beta-cell damage.

Evidence is presented for the existence of a separate species of islet-cell antibodies which fix complement. Investigations in type I diabetics, non-diabetic polyendocrine patients, and unaffected first-degree relatives of type I diabetic probands show that the complement-fixing islet-cell antibodies are more closely related to the onset of clinical disease than the conventional islet-cell antibody, and they tend to disappear more rapidly. The complement-fixing antibodies may reflect damage of pancreatic beta cells more selectively and may be preferable to the conventional antibody as a serological marker for studying the natural history of type I diabetes.

Adolescent↗

Evidence that type I diabetes and thyrogastric autoimmunity have different genetic determinants.

The prevalences of autoimmune endocrine disease and relevant organ-specific autoantibodies were determined in 141 patients with type I (insulin-dependent) diabetes and their families. All available members of the families were genotyped for HLA. Islet-cell antibody was found in 10 (4%) out of 248 unaffected siblings, all of whom were genetically potential cases of diabetes. One developed classical symptoms six months later. In contrast, thyroid and gastric parietal-cell antibodies occurred independent of the HLA-linked susceptibility to diabetes. These results suggest that different genes control the production of these autoantibodies and the susceptibility to type I diabetes.

Adolescent↗

Elevation of rat erythrocyte nucleotide levels following acute renal failure induced by glycerol or mercuric chloride.

Biochemical changes in the blood following induction of renal failure by glycerol or mercuric chloride have been studied in 16 rats. Plasma creatinine, urea and Pi levels indicated that renal impairment followed the same time course in both renal failure models, with the severest effects on day 3 and returning to normal by day 7. Erythrocyte ATP and guanine triphosphate (GTP) levels were significantly elevated above contorl values on day 1 and remained elevated in both models. ATP/ADP and GTP/GDP ratios also increased in both models. In renal failure the increased purine 'salvage' in the erythrocyte may be attributed to accumulation of purine metabolites in the serum associated with increased P-ribose-PP levels due to elevated cellular Pi. Nucleotide changes in both these models are analogous to those found in chronic renal failure in man.

Acute Kidney Injury↗

Studies on adenine and adenosine metabolism by intact human erythrocytes using high performance liquid chromatography.

Adenine and adenosine metabolism has been studied in intact human erythrocytes in vitro using high performance liquid chromatography, isotopic labeling and electrophoresis. Their metabolism to nucleotides was controlled by phosphoribose diphosphate synthesis which was phosphate dependent. Adenosine formed hypoxanthine or IMP depending upon Pi concentration, but adenosine kinase and deaminase activities were not affected by P levels. Free [14C]adenine and [14C]hypoxanthine were found in cellular extracts. Rapid interconversions occurred to give a distribution for ATP : ADP : AMP of 10 : 1 : 0.1. Marked decomposition of ATP to ADP and AMP occurred during incubations in plasma and Earle's media in air on nitrogen, but ATP levels remained stable in phosphate buffers and in the presence of oxygen. At physiological Pi (1 mM) adenosine kinase activity grossly exceeded adenine phosphoribosyltransferase activity. The latter was approximately 7 fold that of hypoxanthine phosphoribosyltransferase activity. These differences decreased with increasing Pi levels. No significant increase in corresponding nucleotides was obtained by incubation with high levels (0.5 mM) of adenine, guanine or guanosine at physiological Ii, ATP increased by 10% independently of the substrate employed and significant amounts of IMP and GTP were formed adenosine and guanosine, respectively. The existence of a bound intracellular pool of ATP is suggested.

Adenine↗